Oxygen transport membranes have the potential to deliver pure and cheap oxygen to chemical reactors, combustors, gasifiers etc., given that geometry, microstructure and material properties are optimized. This work demonstrates the first successful preparation of dual-phase tubular, asymmetric oxygen transport membranes consisting of a new electronic conductor LaCr0.85Cu0.10Ni0.05O3-δ mixed with (Sc2O3)0.10(Y2O3)0.01(ZrO2)0.89 as ionic conductor. Challenges related to Cr-volatility were overcome by using Fe2O3 as a sintering aid. The sintering aid decreased mismatches in shrinkage and thermal expansion between the four layers in the asymmetric membrane and decreased the sintering temperature such that the Cr-volatility was suppressed. The me...
International audienceThis work focuses on identifying the rate-determining step of oxygen transport...
Asymmetric membranes of mixed ionic-electronic conducting perovskite-type oxides SrTi1-xFexO3-δ (STF...
Perhaps mankind’s most urgent challenge at present is anthropogenic climate change, with the associa...
Tubular oxygen transport membranes (OTMs) that can be directly integrated in high temperature proces...
Self-standing, planar dual-phase oxygen transport membranes consisting of 70 vol.% (ZrO2)0.89(Y2O3)0...
DEVELOPMENT OF ASYMMETRIC DUAL PHASE COMPOSITE OXYGEN TRANSPORT MEMBRANESFalk Schulze-Küppers 1 – St...
[EN] An original asymmetric tubular membrane for oxygen production applications was manufactured in ...
Dual-phase composite oxygen transport membranes consisting of 50 vol% Al0.02Zn0.98O1.01 and 50 vol% ...
Oxygen transport membranes (OTM) are a promising option to supply oxygen for industrial processes su...
Asymmetric membrane structure has an attractive potential in the application of O$_{2}$/N$_{2}$ gas ...
Oxygen transport membranes (OTMs) are a promising alternative to cryogenic air separation (ASU) or p...
Oxygen transport membranes (OTMs) are attracting great interest for the separation of oxygenfrom air...
[EN] One of the most promising materials for oxygen separation amongst ceramic oxygen transport memb...
La0.2Sr0.8Fe0.8Ta0.2O3 − δ (LSFT) is a mixed ionic electronic conductor (MIEC) at elevated temperatu...
The integration of oxygen transport membranes in industrial processes can lead to energy and economi...
International audienceThis work focuses on identifying the rate-determining step of oxygen transport...
Asymmetric membranes of mixed ionic-electronic conducting perovskite-type oxides SrTi1-xFexO3-δ (STF...
Perhaps mankind’s most urgent challenge at present is anthropogenic climate change, with the associa...
Tubular oxygen transport membranes (OTMs) that can be directly integrated in high temperature proces...
Self-standing, planar dual-phase oxygen transport membranes consisting of 70 vol.% (ZrO2)0.89(Y2O3)0...
DEVELOPMENT OF ASYMMETRIC DUAL PHASE COMPOSITE OXYGEN TRANSPORT MEMBRANESFalk Schulze-Küppers 1 – St...
[EN] An original asymmetric tubular membrane for oxygen production applications was manufactured in ...
Dual-phase composite oxygen transport membranes consisting of 50 vol% Al0.02Zn0.98O1.01 and 50 vol% ...
Oxygen transport membranes (OTM) are a promising option to supply oxygen for industrial processes su...
Asymmetric membrane structure has an attractive potential in the application of O$_{2}$/N$_{2}$ gas ...
Oxygen transport membranes (OTMs) are a promising alternative to cryogenic air separation (ASU) or p...
Oxygen transport membranes (OTMs) are attracting great interest for the separation of oxygenfrom air...
[EN] One of the most promising materials for oxygen separation amongst ceramic oxygen transport memb...
La0.2Sr0.8Fe0.8Ta0.2O3 − δ (LSFT) is a mixed ionic electronic conductor (MIEC) at elevated temperatu...
The integration of oxygen transport membranes in industrial processes can lead to energy and economi...
International audienceThis work focuses on identifying the rate-determining step of oxygen transport...
Asymmetric membranes of mixed ionic-electronic conducting perovskite-type oxides SrTi1-xFexO3-δ (STF...
Perhaps mankind’s most urgent challenge at present is anthropogenic climate change, with the associa...